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A synthesized design of sliding-mode and Luenberger observers for early detection of incipient faults

机译:滑模和Luenberger观测器的综合设计,可用于早期故障的早期检测

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In this paper, a new design of sliding mode observers (SMOs) for the purpose of early detection of incipient faults is presented. This work is motivated by the fact that the strong robustness of the conventional SMO to bounded disturbances inevitably makes it insensitive to incipient faults when they are small in size during the initial phase; as a result, the fault-detection residual generated through the SMO is not sensitive to incipient faults for a certain length of time until they have become severe. On the contrary, the new design proposed in this paper ensures that the overall system is sensitive to incipient faults while remaining robust to disturbances. The design presented in this paper is based on the transformation of the system into two subsystems. One of these subsystems is free from disturbances and/or modeling errors: for this subsystem, a Luenberger observer is constructed; the other subsystem is subject to disturbances: an SMO is designed for this subsystem so that the effect of the disturbances is eliminated. Together, the entire system achieves both robustness to disturbances and sensitivity to incipient faults. Stability and convergence of the proposed SMO and Lueneberger observer are proved, and an aircraft example is employed to demonstrate the effectiveness of the proposed design approach.
机译:在本文中,提出了一种用于早期检测早期故障的滑模观测器(SMO)的新设计。这项工作的动机是,常规SMO对有限扰动的强大鲁棒性不可避免地使其在初始阶段尺寸较小时对初期故障不敏感。结果,通过SMO生成的故障检测残差在一段时间内对始发故障不敏感,直到它们变得严重为止。相反,本文提出的新设计可确保整个系统对初期故障敏感,同时对干扰保持鲁棒性。本文提出的设计是基于将系统转换为两个子系统的。这些子系统之一不受干扰和/或建模错误:为此子系统构建了Luenberger观测器;另一个子系统受到干扰:为此子系统设计了一个SMO,以消除干扰的影响。整个系统共同实现了对干扰的鲁棒性和对初期故障的敏感性。证明了拟议中的SMO和Lueneberger观测器的稳定性和收敛性,并以飞机为例来论证所提出设计方法的有效性。

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